Performance Data Sheet
AEA3414YXA
General Information
Model AEA3414YXA Refrigerant R-134a
Test Condition ARI Performance Test Voltage 115V ~ 60HZ
Return Gas 18.3°C (65°F) RETURN GAS Motor Type RSIR
Performance Information
Evap Temp (°F)
20
25
30
35
40
45
50
55
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 1250 1080 951 848 759 673 577
Watts 163 173 179 183 185 185 185
Amps 2.57 2.52 2.50 2.50 2.50 2.51 2.50
Lb/h 16.6 14.7 13.5 12.7 12.0 11.3 10.4
Btu/h 1400 1220 1080 960 859 762 655
Watts 171 182 189 194 196 198 199
Amps 2.52 2.49 2.49 2.50 2.52 2.54 2.54
Lb/h 18.6 16.6 15.3 14.4 13.7 12.9 11.9
Btu/h 1570 1380 1220 1100 983 875 757
Watts 179 191 199 205 208 211 214
Amps 2.54 2.52 2.52 2.55 2.58 2.61 2.63
Lb/h 20.9 18.9 17.5 16.5 15.7 14.9 13.8
Btu/h 1760 1550 1390 1250 1120 1010 878
Watts 188 200 209 216 221 225 228
Amps 2.59 2.58 2.60 2.63 2.68 2.72 2.76
Lb/h 23.4 21.4 19.9 18.9 18.0 17.2 16.1
Btu/h 1960 1740 1560 1410 1280 1150 1010
Watts 197 210 220 228 234 239 244
Amps 2.67 2.67 2.70 2.74 2.80 2.85 2.90
Lb/h 26.2 24.1 22.6 21.5 20.6 19.7 18.6
Btu/h 2160 1930 1740 1580 1440 1300 1150
Watts 207 221 232 240 247 253 259
Amps 2.76 2.77 2.80 2.86 2.92 2.99 3.05
Lb/h 28.9 26.8 25.3 24.2 23.4 22.5 21.4
Btu/h 2360 2120 1920 1750 1600 1450 1300
Watts 218 232 244 253 261 268 275
Amps 2.86 2.87 2.91 2.97 3.05 3.12 3.19
Lb/h 31.7 29.6 28.1 27.0 26.1 25.3 24.2
Btu/h 2550 2300 2090 1910 1750 1600 1430
Watts 230 245 257 267 276 284 292
Amps 2.93 2.95 3.00 3.07 3.15 3.23 3.30
Lb/h 34.3 32.2 30.8 29.7 28.9 28.1 27.0
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 4.785234E+03 -1.402424E+02 6.450892E+00 6.936123E+01
C2 2.333653E+01 2.665682E-01 -1.176671E-01 2.215179E-01
C3 -9.456904E+01 6.902933E+00 -7.002471E-02 -1.457819E+00
C4 9.093977E-01 5.949163E-03 2.687373E-03 1.214227E-02
C5 -3.561071E-01 7.138018E-03 2.781563E-04 -4.546000E-03
C6 7.535054E-01 -5.341889E-02 5.509048E-04 1.230208E-02
C7 -7.693951E-03 1.206526E-04 -1.833773E-05 -1.166710E-04
C8 1.139874E-03 -7.645533E-05 -2.787658E-06 3.936495E-05
C9 2.865302E-04 8.147848E-05 6.356552E-07 4.775313E-06
C10 -2.071715E-03 1.274472E-04 -1.602145E-06 -3.486876E-05
Value = C1 + C2 * Te + C4 * Te^2 + C7 * Te^3 + (C3 + C5 * Te + C8 * Te^2) * Tc + (C6 + C9 * Te) * Tc^2 + C10 * Tc^3
Te = Evaporator Temperature
Tc = Condensing Temperature